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T60004-L2130-W630 Datasheet(PDF) 6 Page - List of Unclassifed Manufacturers

Part # T60004-L2130-W630
Description  NaNOcRysTallINE VITROPERM
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10
100
1,000
10,000
100,000
0.001
0.01
0.1
1
10
100
frequency [MHz]
VITROPERM 500F
typical Mn-Zn ferrite
VITROPERM 250F
0
10
20
30
40
50
0.001
0.01
0.1
1
10
frequency [MHz]
1- phase CMC, core:
25 x 20 x 10 mm (VITROPERM)
25 x 15 x 10 mm (ferrite)
typical ferrite CMC
VITROPERM CMC
due to the optimized high-frequency properties the insertion loss of our
nanocrystalline common mode chokes is superior compared to that of
a typical ferrite choke in the relevant frequency range.
VITROPERM
vs. ferrite
Fig. 5: Comparison of insertion loss of VITROPERM and ferrite
The properties of VITROPERM are very much diffe-
rent from conventional ferrites. This has to be consi-
dered in the filter design for optimal solutions. The
main physical and magnetic characteristics are illus-
trated in the following diagrams.
Fig. 6: Frequency response of the permeability of VITROPERM 500F (μ=40 000) and VITROPERM 250F
(μ=5 000) in comparison to a typical MnZn ferrite (μ=5 000).
permeability
The permeability of VITROPERM 500F is signifi-
cantly higher than ferrite in the low frequency range.
At higher frequencies the μ of both nanocrystalline
materials remains above that of ferrites. A high
choke impedance is preferred for a high attenuation.
This can be achieved more effectively by using high
permeability core materials than by increasing the
number of turns, as a lower number of turns results
in lower winding capacitance and hence improved
HF properties.
6
NaNOcRysTallINE VITROPERM / EMc PROducTs


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